Ng FC, Yassi N, Sharma G, et al. Cerebral edema in patients with large hemispheric infarct undergoing reperfusion treatment: a HERMES meta-analysis. Stroke. 2021;52:3450–8.
Article CAS PubMed PubMed Central Google Scholar
Liebeskind DS, Jüttler E, Shapovalov Y, Yegin A, Landen J, Jauch EC. Cerebral edema associated with large hemispheric infarction: implications for diagnosis and treatment. Stroke. 2019;50:2619–25.
Bektas H, Wu TC, Kasam M, et al. Increased blood-brain barrier permeability on perfusion CT might predict malignant middle cerebral artery infarction. Stroke. 2010;41:2539–44.
Article PubMed PubMed Central Google Scholar
Hom J, Dankbaar JW, Soares BP, et al. Blood-brain barrier permeability assessed by perfusion CT predicts symptomatic hemorrhagic transformation and malignant edema in acute ischemic stroke. AJNR Am J Neuroradiol. 2011;32:41–8.
Article CAS PubMed PubMed Central Google Scholar
Dhar R, Hamzehloo A, Kumar A, et al. Hemispheric CSF volume ratio quantifies progression and severity of cerebral edema after acute hemispheric stroke. J Cereb Blood Flow Metab. 2021;41:2907–15.
Article CAS PubMed PubMed Central Google Scholar
Dahr R, Chen Y, Hamzehloo A, et al. Reduction in cerebrospinal fluid volume as an early quantitative biomarker of cerebral edema after ischemic stroke. Stroke. 2020;51:462–7.
Minnerup J, Wersching H, Ringelstein EB, et al. Prediction of malignant middle cerebral artery infarction using computed tomography-based intracranial volume reserve measurements. Stroke. 2011;42:3403–9.
Thomalla G, Cheng B, Ebinger M, et al. DWI-FLAIR mismatch for the identification of patients with acute ischaemic stroke within 4.5 h of symptom onset (PRE-FLAIR): a multicentre observational study. Lancet Neurol 2011;10:978–86.
Siegler JE, Martin-Schild S. Early Neurological Deterioration (END) after stroke: the END depends on the definition. Int J Stroke. 2011;6:211–2.
Siegler JE, Boehme AK, Kumar AD, Gillette MA, Albright KC, Martin-Schild S. What change in the National Institutes of Health Stroke Scale should define neurologic deterioration in acute ischemic stroke? J Stroke Cerebrovasc Dis. 2013;22:675–82.
Qureshi AI, Suarez JI, Yahia AM, et al. Timing of neurologic deterioration in massive middle cerebral artery infarction: a multicenter review. Crit Care Med. 2003;31:272–7.
Ren Z, Huo X, Kumar J, et al. Review of current large core volume stroke thrombectomy clinical trials: controversies and progress. Stroke Vasc Intervent Neurol. 2022;2:e000330.
Bendszus M, Fiehler J, Subtil F, et al. Endovascular thrombectomy for acute ischaemic stroke with established large infarct: multicentre, open-label, randomised trial. Lancet. 2023.
McCollough CH, Leng S, Yu L, Fletcher JG. Dual- and multi-energy CT: principles, technical approaches, and clinical applications. Radiology. 2015;276:637–53.
Wolman DN, Patel BP, Wintermark M, Heit JJ. Dual-energy computed tomography applications in neurointervention. J Comput Assist Tomogr. 2018;42:831–9.
Bonatti M, Lombardo F, Zamboni G, et al. Iodine extravasation quantification on dual-energy CT of the brain performed after mechanical thrombectomy for acute ischemic stroke can predict hemorrhagic complications. Am J Neuroradiol. 2018;39:441–7.
Article CAS PubMed PubMed Central Google Scholar
Phan CM, Yoo AJ, Hirsch JA, Nogueira RG, Gupta R. Differentiation of hemorrhage from iodinated contrast in different intracranial compartments using dual-energy head CT. AJNR Am J Neuroradiol. 2012;33:1088–94.
Article CAS PubMed PubMed Central Google Scholar
Wolman DN, van Ommen F, Tong E, et al. Non-contrast dual-energy CT virtual ischemia maps accurately estimate ischemic core size in large-vessel occlusive stroke. Sci Rep. 2021;11:6745.
Article CAS PubMed PubMed Central Google Scholar
Köhrmann M, Struffert T, Frenzel T, Schwab S, Doerfler A. The hyperintense acute reperfusion marker on fluid-attenuated inversion recovery magnetic resonance imaging is caused by gadolinium in the cerebrospinal fluid. Stroke. 2012;43:259–61.
Muchada M, Rubiera M, Rodriguez-Luna D, et al. Baseline national institutes of health stroke scale–adjusted time window for intravenous tissue-type plasminogen activator in acute ischemic stroke. Stroke. 2014;45:1059–63.
Article CAS PubMed Google Scholar
Von Elm E, Altman DG, Egger M, Pocock SJ, Gøtzsche PC, Vandenbroucke JP. The strengthening the reporting of observational studies in epidemiology (STROBE) statement: guidelines for reporting observational studies. Lancet. 2007;370:1453–7.
Deng Y, Wu S, Liu J, et al. The stress hyperglycemia ratio is associated with the development of cerebral edema and poor functional outcome in patients with acute cerebral infarction. Front Aging Neurosci. 2022;14: 936862.
Article PubMed PubMed Central Google Scholar
Cannarsa GJ, Wessell AP, Chryssikos T, et al. Initial stress hyperglycemia is associated with malignant cerebral edema, hemorrhage, and poor functional outcome after mechanical thrombectomy. Neurosurgery. 2022;90:66–71.
Wu S, Yuan R, Wang Y, et al. Early prediction of malignant brain edema after ischemic stroke: a systematic review and meta-analysis. Stroke. 2018;49:2918–27.
Miao J, Song X, Sun W, Qiu X, Lan Y, Zhu Z. Predictors of malignant cerebral edema in cerebral artery infarction: a meta-analysis. J Neurol Sci. 2020;409: 116607.
Mainali S, Wahba M, Elijovich L. Detection of early ischemic changes in noncontrast CT head improved with “stroke windows.” ISRN Neurosci. 2014;2014: 654980.
Article PubMed PubMed Central Google Scholar
von Kummer R, Broderick JP, Campbell BC, et al. The Heidelberg bleeding classification: classification of bleeding events after ischemic stroke and reperfusion therapy. Stroke. 2015;46:2981–6.
Simard JM, Chen M, Tarasov KV, et al. Newly expressed SUR1-regulated NC(Ca-ATP) channel mediates cerebral edema after ischemic stroke. Nat Med. 2006;12:433–40.
Article CAS PubMed PubMed Central Google Scholar
Aarts MM, Tymianski M. TRPMs and neuronal cell death. Pflugers Arch. 2005;451:243–9.
Article CAS PubMed Google Scholar
Wang CX, Shuaib A. Critical role of microvasculature basal lamina in ischemic brain injury. Prog Neurobiol. 2007;83:140–8.
Article CAS PubMed Google Scholar
Dostovic Z, Dostovic E, Smajlovic D, Ibrahimagic OC, Avdic L. Brain edema after ischaemic stroke. Med Arch. 2016;70:339–41.
Article PubMed PubMed Central Google Scholar
Simard JM, Kent TA, Chen M, Tarasov KV, Gerzanich V. Brain oedema in focal ischaemia: molecular pathophysiology and theoretical implications. Lancet Neurol. 2007;6:258–68.
Article CAS PubMed PubMed Central Google Scholar
Kauw F, Ding V, Dankbaar J, et al. Detection of early ischemic changes with virtual noncontrast dual-energy CT in acute ischemic stroke: a noninferiority analysis. Am J Neuroradiol. 2022;43:1259–64.
Article CAS PubMed PubMed Central Google Scholar
Khatri R, McKinney AM, Swenson B, Janardhan V. Blood–brain barrier, reperfusion injury, and hemorrhagic transformation in acute ischemic stroke. Neurology. 2012;79:S52–7.
Jang YM, Lee DH, Kim HS, et al. The fate of high-density lesions on the non-contrast CT obtained immediately after intra-arterial thrombolysis in ischemic stroke patients. Korean J Radiol. 2006;7:221–8.
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